In this example, we intend to simulate the
Honeycomb Structural Fuse (HSF) under cyclic loading
in the Abaqus software.
The Honeycomb Structural Fuse (HSF) is a metallic
damper designed to dissipate energy through its inelastic deformation
under cyclic loading.
Honeycomb Structural Fuse (HSF) model simulated in Abaqus.
Laboratory Sample
The laboratory sample used in the experimental study
can be observed in the following picture.
Laboratory sample of the Honeycomb Structural Fuse (HSF).
Cyclic Loading
In this problem, cyclic loading is applied to the
Honeycomb Structural Fuse, and its hysteretic behavior is investigated.
The cyclic loading history is defined using the corresponding
amplitude data in Abaqus.
Hysteresis Diagram
After applying the cyclic loading, the
Force-Drift hysteresis diagram is obtained from the
Abaqus results.
In this picture, the Force-Drift hysteresis diagram obtained
from Abaqus is compared with the results obtained from the
experimental sample.
Comparison of the Drift-Force hysteresis diagram obtained from Abaqus
with the experimental results.
Deformation of the Model
The deformation of the Honeycomb Structural Fuse under cyclic
loading can be observed in the following picture.
Deformation of the Honeycomb Structural Fuse under cyclic loading.
Validation
This project has been validated, which means that the
results obtained from the Abaqus software are similar to the
results reported in the article.
In other words, this project is based on the reference article, and the
numerical model has been developed to reproduce the experimental
behavior of the Honeycomb Structural Fuse under cyclic loading.
What You Will Learn
How to model a Honeycomb Structural Fuse (HSF) in Abaqus.
How to model a metallic damper.
How to define the geometry and assembly of the model.
How to define the material properties.
How to define the boundary conditions.
How to apply cyclic loading.
How to define the cyclic loading amplitude.
How to obtain the Drift-Force hysteresis diagram.
How to investigate the behavior of the damper under cyclic loading.
How to compare Abaqus results with experimental results.
How to validate the numerical model using the reference article.
Key Features
Honeycomb Structural Fuse (HSF) modeling in Abaqus.
Metallic damper analysis.
Cyclic loading analysis.
Drift-Force hysteresis diagram.
Comparison between Abaqus and experimental results.
Validation against the reference article.
Complete Abaqus CAE file.
Abaqus INP file.
Excel amplitude loading file.
Excel material file.
Excel results file.
Reference research paper.
Step-by-step video tutorial.
Reference
This project is based on the reference research article. The paper is
included with the project files and can be used to review the
experimental model, cyclic loading protocol, and reported results.
Reference research article used for the numerical study and validation.
Files Included
What you will receive after purchase
File Type
Content
Description
🧩
Abaqus
CAE File
Complete Abaqus model
📄
Abaqus
INP File
Abaqus input file
📊
Excel
Amplitude Loading
Cyclic loading amplitude data
📋
Excel
Material
Material properties used in the Abaqus model
📈
Excel
Results
Results obtained from the Abaqus analysis
📑
Document
Research Paper
Reference article used for validation
🎥
Video
Full Video
Step-by-step explanation of the project
Project Information
Important information about this project
🎥
Video Duration43 Minutes
📦
Total File Size350 MB
💻
Abaqus VersionAbaqus 2017
🌐
LanguageEnglish
📥
File DeliveryInstant Download
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